Method and access network device for interference coordination
Summary by NHIP
AOA-based resource coordination method
The method divides cell time-frequency resources into subsets and groups users by Angle Of Arrival to assign selection priorities. Neighboring cells adjust their resources and priority sequences to avoid conflicts when user groups share the same arrival direction.
Claim Score by NHIP
Abstract
The present invention discloses a method and access network device for interference coordination, said method comprises: getting time-frequency resource of cell, and dividing said time-frequency resource into multiple resource subsets; grouping users to be scheduled in the cell into multiple user groups according to AOA, the amount of said user groups is equal to the amount of said resource subsets, different user groups have different resource subset selection priority orders; allocating time-frequency resource of the resource subsets to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups. The present invention could reduce inter-cell co-frequency interference and improve channel quality.

Term
Projected expiry 30 April 2030.
- Priority
- Filed
- Granted
- Today
- Projected expiry
14 claims: 2 independent, 12 dependent
- 1Broadest claimClaim Score 37, average(NHIP)A method for interference coordination, comprising:obtaining time-frequency resource of a cell, and dividing the time-frequency resource into a plurality of resource subsets;dividing users to be scheduled in the cell into a plurality of user groups according to Angle Of Arrival (AOA) of wave, wherein the number of the user groups is equal to the number of the resource subsets, and each of the user groups has its respective sequence of priorities for selecting among the resource subsets;transmitting information on the user group comprising the AOA, information on the resource subsets, and the respective sequence of priorities for selecting among the resource subsets for each of the user groups in the cell to neighboring cells, after said dividing users to be scheduled in the cell into a plurality of user groups according to AOA of wave, wherein each of the neighboring cells adjusts the resource subsets and the respective sequence of priorities for selecting among the resource subsets for each user group of a plurality of user groups in the neighboring cell based on a rule that the time-frequency resource of one of the user groups in the neighboring cell is not conflicted with the time-frequency resource of one of the user groups in the cell, while the AOA of one of the user groups in the neighboring cell is same as that of one of the user groups in the cell, after receiving the information on the user group comprising the AOA, information on the resource subsets, and the respective sequence of priorities for selecting among the resource subsets for each of the user groups in the cell;and allocating the time-frequency resource in the one of the resource subsets to the users of one of the user groups with the same AOA, according to the sequence of priorities for selecting among the resource subsets for one of the user groups.
- 8An access network device, comprising:a processor;and a non-volatile storage medium, configured to be connected to the processor via a bus interface, and store programs and data to be used by the processor, wherein upon the processor executes the programs and data stored in the non-volatile storage medium, following modules are implemented: a resource obtaining module, configured for obtaining time-frequency resource of a cell;a resource grouping module, configured for dividing the time-frequency resource into a plurality of resource subsets;a user grouping module, configured for dividing users to be scheduled in the cell into a plurality of user groups according to Angle Of Arrival (AOA) of wave, wherein the number of the user groups is equal to the number of the resource subsets, and each of the user groups has its respective sequence of priorities for selecting among the resource subsets;a transmitting module, configured for transmitting information on the user group comprising the AOA, information on the resource subsets, and the respective sequence of priorities for selecting among the resource subsets for each of the user groups in the cell to neighboring cells, after said dividing users to be scheduled in the cell into a plurality of user groups according to AOA of wave, wherein each of the neighboring cells adjusts the resource subsets and the respective sequence of priorities for selecting among the resource subsets for each user group of a plurality of user groups in the neighboring cell based on a rule that the time-frequency resource of one of the user groups in the neighboring cell is not conflicted with the time-frequency resource of one of the user groups in the cell, while the AOA of one of the user groups in the neighboring cell is same as that of one of the user groups in the cell, after receiving the information on the user group comprising the AOA, information on the resource subsets, and the respective sequence of priorities for selecting among the resource subsets for each of the user groups in the cell;and a resource allocating module, configured for allocating the time-frequency resource in the one of the resource subsets to the users of one of the user groups with the same AOA, according to the sequence of priorities for selecting among the resource subsets for one of the user groups.
Independent claims2
134 paragraphs in 6 sections, as filed
CROSS-REFERENCE TO RELATED APPLICATIONS
0001This application is the U.S. National Stage of International Patent Application No. PCT/CN2009/076224 filed on Dec. 30, 2009, which claims priority to Chinese Patent Application Number 200810247578.1 filed on Dec. 30, 2008, the disclosures of which are hereby incorporated by reference in their entireties.
FIELD OF THE PRESENT INVENTION
0002The present invention relates generally to the field of communication technology, and more particularly to method and access network device for interference coordination.
BACKGROUND OF THE PRESENT INVENTION
0003In Long Term Evolution (LTE) system, Orthogonal Frequency Division Multiplexing (OFDM) technology is used, take LTE-Time Division Duplexing (LTE-TDD) system for example, its frame structure is shown in <figref idref="DRAWINGS">FIG. 1</figref>. The basic resource unit that could be scheduled by the LTE system is Physical Resource Block (PRB), each PRB comprising 12*15 KHz bandwidth and 1 ms time slot unit (subframe). In time domain of system, each frame could be divide into two half-frame, each half-frame could be divide into five subframe. In frequency domain of system, different bandwidth could be divided into 50 PRB or 100 PRB etc.
0004Under co-frequency networking condition, neighboring cell interference is the main interference. It should use interference suppression and interference coordination technology to reduce co-frequency interference and improve the spectral efficiency of the system.
0005Multi-antenna forming technology could effectively inhibit neighboring cell co-frequency interference, Multi-antenna forming technology is to improve intensity of useful signal in user direction and to inhibit interference power in other direction according to space beam, thus to improve receiving signal-to-noise ratio of useful signal. However, this interference suppression is random, when the locations of neighboring cell users and home cell users, which are scheduled on the same frequency band, are close, it could cause strong interference.
0006Interference coordination technology is widely used in LTE system, it generally comprises static part frequency multiplexing technology and semi-static interference coordination technology.
0007Principle of the static part frequency multiplexing technology is shown as follow: each cell-edge user could only use part of the entire available frequency band, and frequency resources of neighboring cell-edges are mutually orthogonal, on each cell edge, available frequency band could be sent under high power to improve edge performance; in the cell interior, it could use entire frequency resources, in order to reduce the interference to neighboring cell, it should limit the maximum transmitting power when using the frequency band of neighboring cell edge.
0008Semi-static interference coordination technology semi-statically adjustments resource subset allocated to cell-edge users by interacting resource using information through X2 interface (communication interface between eNBs). Each cell gets resource using information by estimating resource requirement of cell-edge users of home cell and detecting interference of each frequency band and other ways, and interacts resource using information through X2 interface, to achieve coordination between cells, thus to reduce inter-cell interference.
0009In current method for interference coordination, the home cell users and neighboring cell users scheduled on the same subband is completely random, that would cause the follow problems:
00101) Quality of user channel will vary with the location change of neighboring cell users scheduled on the same frequency band, so there could be a condition that channel interference is strong;
00112) Quality of user channel will vary with the location change of neighboring cell users scheduled on the same frequency band, so when the system uses Adaptive Modulation and Coding (AMC) technology, it's difficult to accurately forecast channel quality, that increases the Block Error Rate (BLER).
SUMMARY OF THE PRESENT INVENTION
0012The embodiments of the present invention provide a method and access network device for interference coordination, to reduce inter-cell co-frequency interference and improve channel quality.
0013Therefor, the embodiments of the present invention provide the technical scheme as follow:
0014The embodiment provides a method for interference coordination, wherein, comprising:
0015getting time-frequency resource of cell, and dividing said time-frequency resource into multiple resource subset;
0016grouping users to be scheduled in the cell into multiple user groups according to AOA, the amount of said user groups is equal to the amount of said resource subset, different user groups have different resource subset selection priority orders;
0017allocating time-frequency resource in resource subset to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups.
0018The embodiment provides an access network device, wherein, comprising:
0019resource getting module, is used for getting time-frequency resource of cell;
0020resource grouping module, is used for dividing said time-frequency resource into multiple resource subset;
0021user grouping module, is used for grouping users to be scheduled in the cell into multiple user groups according to AOA, the amount of said user groups is equal to the amount of said resource subset, different user groups have different resource subset selection priority orders;
0022resource allocating module, is used for allocating time-frequency resource in resource subset to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups.
0023The embodiments of the present invention provides a method and access network device for interference coordination, getting time-frequency resource of cell, dividing said time-frequency resource into multiple resource subset, grouping users to be scheduled in the cell into multiple user groups according to AOA, the amount of said user groups is equal to the amount of said resource subset, different user groups have different resource subset selection priority orders, allocating time-frequency resource in resource subset to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups. Therefor, the embodiments of the present invention could ensure that home cell users and neighboring cell users with same direction information preferentially use mutually orthogonal time-frequency resource, thus could reduce the probability that home cell users and neighboring cell users with same direction information preferentially use same time-frequency resource, comprising the probability that home cell edge users and neighboring cell edge users with same direction information preferentially use same time-frequency resource, that could reduce inter-cell co-frequency interference and improve channel quality.
BRIEF DESCRIPTION OF THE DRAWINGS
0024<figref idref="DRAWINGS">FIG. 1</figref> is a frame structure diagram of LTE-TDD system in prior art.
0025<figref idref="DRAWINGS">FIG. 2</figref> is a flow diagram of a method for interference coordination of an embodiment of the present invention.
0026<figref idref="DRAWINGS">FIG. 3</figref> is a diagram of grouping users basing on four color theorem in an embodiment of the present invention.
0027<figref idref="DRAWINGS">FIG. 4</figref> is a diagram of a division of resource subset in an embodiment of the present invention.
0028<figref idref="DRAWINGS">FIG. 5</figref> is a structure diagram of an access network device of an embodiment of the present invention.
DETAILED DESCRIPTION OF THE EMBODIMENTS OF THE PRESENT INVENTION
0029To make technical personnel of the field better understand the scheme of the embodiments of the present invention, in the following parts, further detailed descriptions of the embodiments of the present invention are made combined with drawings and implementation methods.
0030The embodiments of the present invention provides a method and access network device for interference coordination, getting time-frequency resource of cell, dividing said time-frequency resource into multiple resource subset, grouping users to be scheduled in the cell into multiple user groups according to AOA, the amount of said user groups is equal to the amount of said resource subset, different user groups have different resource subset selection priority orders, allocating time-frequency resource in resource subset to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups. Therefor, the embodiments of the present invention could ensure that home cell users and neighboring cell users with same direction information preferentially use mutually orthogonal time-frequency resource, that could reduce inter-cell co-frequency interference.
0031<figref idref="DRAWINGS">FIG. 2</figref> is a flow diagram of a method for interference coordination of an embodiment of the present invention, mainly comprising the following steps:
0032Step <b>201</b>, getting time-frequency resource of cell, and dividing said time-frequency resource into multiple resource subsets.
0033When system groups time-frequency resource, to downlink time-frequency resource, the system divides time-frequency resource by using one or more continuous PRB as a minimum unit; to uplink time-frequency resource, the system does resource subset division to continuous time-frequency resource according to principle of mutually orthogonal.
0034Specifically, the system could statically configure the amount of time-frequency resource in each resource subset, and could also dynamically configure the appropriate amount of time-frequency resource in each resource subset. Simply, the system could configure the amount of time-frequency resource in each resource subset according to the principle that the amount of time-frequency resource is proportional to the amount of users or business requirement. In each resource subset, the time-frequency resource could be continuous, it could also be discontinuous.
0035Step <b>202</b>, grouping users to be scheduled in the cell into multiple user groups according to Angle of Arrival (AOA), the amount of said user groups is equal to the amount of said resource subset, different user groups have different resource subset selection priority orders.
0036Specifically, the system could divide angle space into multiple mutually orthogonal angle subspace according to AOA, each angle subspace is corresponding to a user group; the system determines user group, which the user belongs to, according to angle subspace which said user belongs to.
0037When the system allocates time-frequency resource, users in different user group corresponds to different resource subset selection priority orders. For example, the resource subset selection priority orders respectively corresponding to user group <b>1</b> to user group N are shown as follow:
0038User group <b>1</b>: resource subset <b>1</b>→resource subset <b>2</b>→resource subset <b>3</b> . . . resource subset N;
0039User group <b>2</b>: resource subset <b>2</b>→resource subset <b>3</b> . . . resource subset N→resource subset <b>1</b>;
0040. . .
0041User group N: resource subset N→resource subset <b>1</b>→resource subset <b>2</b>→resource subset <b>3</b> . . . ;
0042In practice, at the stage of the network initial planning, system could determine the amount of user groups, and determine resource subset selection priority order corresponding to each user group, according to location of each cell, to ensure that user groups with the same direction preferentially use time-frequency resource in different resource subset.
0043In order to better coordinate resource and adapt changes in the distribution of business and users, after the system has completed configuring grouping information, eNB sends its user group information, resource subset information, and resource subset selection priority order corresponding to each user group to neighboring cell, said user group information comprises AOA of user, resource subset selection priority order corresponding to each user group could be indicated by numbers of resource subsets. In LTE system, these information could be transmitted through X2 interface between eNBs. After cell receive the grouping information of neighboring cell, it could adjust resource subset and resource subset selection priority order corresponding to each user group basing on the principle that time-frequency resources used by user groups with the same direction are not conflict.
0044Furthermore, at the stage of the network initial planning, user group information, resource subset information, and resource subset selection priority order corresponding to each user group could also be configured into eNB the neighboring cell belongs to. When any of user group information, resource subset information, and resource subset selection priority order corresponding to each user group is change, home cell would send change information to the neighboring cell. After cell receive the change information of neighboring cell, it could adjust resource subset and resource subset selection priority order corresponding to each user group basing on the principle that time-frequency resources used by user groups with the same direction are not conflict.
0045Step <b>203</b>, allocating time-frequency resource in resource subset to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups.
0046For example, in advance, the system could establish mapping relation between user group and resource subset selection priority order, specifically, the system could establish mapping relation between user group and resource subset selection priority order according to the principle shown as follow: selects resource subset with top priority in resource subset selection priority order for one of user groups, resource subset with top priority in resource subset selection priority order corresponding to different user group is different.
0047In this way, when cell does scheduling on each subframe, it allocates time-frequency resource for each user according to user group of the user and said mapping relation.
0048Generally, neighboring cell interference is stronger to cell-edge users, but neighboring cell interference is not strong to cell-center user, therefore, in specific applications, the system could only grouping the cell-edge users, correspondingly, the system could only divide part of time-frequency resource of system. In this way, the system could establish mapping relation between user group and resource subset selection priority order according to the principle shown as follow: selects resource subset with top priority in resource subset selection priority order for one of user groups, resource subset with top priority in resource subset selection priority order corresponding to different user group is different; sets the resource subset with top priority to cell-edge user group has lowest selection priority to cell-center user.
0049Basing on four color theory, generally, four resource subsets could basically ensure that users at same location in different cells use different time-frequency resource. In the embodiments of the present invention, to users in any neighboring cells, the users at mutually neighbor locations belongs to different user groups, the system allocates time-frequency resource for users to be scheduled, according to the mapping relation between user group and resource subset selection priority order, therefore, it could ensure to allocate different time-frequency resource to users which are in neighboring cells and have the same direction. In LTE system, there are 50-100 PRB resources, and the time resources also could be further divided, therefore, the method of the embodiments of the present invention could reduce inter-cell co-frequency interference effectively.
0050The allocation process of time-frequency resource in the embodiments of the present invention will be further illustrated by following example.
Example 1, Grouping all Users of the Cell
0051Suppose that it is in three sectors LTE-TDD system, the allocation is to downlink time-frequency resource, and the amount of user groups and resource subsets is N=4.
0052(1) The system groups all users of the cell into four user groups, namely: U<sub>0</sub>, U<sub>1</sub>, U<sub>2</sub>, U<sub>3</sub>.
0053The azimuth information of user could be defined by AOA measured at eNB, the AOA is defined as user's estimated angle relative to reference direction. AOA information could be got by spectrum estimation (such as MUSIC spectrum estimation, ESPRIT algorithm, etc). Take MUSIC spectrum estimation for example, AOA could be got by the following manner: first, eNB gets sampled signal value sequence with AOA information, and constructs correlation matrix; then, does eigen-decomposition to correlation matrix, estimates amount of signals by multiplicity of minimal eigenvalue; finally, calculates MUSIC spectrum and constructs cost function, the direction corresponding to peak value of the cost function is the AOA of the signal.
0054It could use the method basing on four color theorem shown in <figref idref="DRAWINGS">FIG. 3</figref> to group downlink users, grouping users by the granularity of
0055<maths id="MATH-US-00001" num="00001"><math overflow="scroll"><mrow><mfrac><mi>π</mi><mn>6</mn></mfrac><mo>.</mo></mrow></math></maths><br /> specifically, in three sectors system, suppose that the AOA value range of sector <b>0</b> is
0056<maths id="MATH-US-00002" num="00002"><math overflow="scroll"><mrow><mrow><mo>[</mo><mrow><mrow><mo>-</mo><mfrac><mi>π</mi><mn>3</mn></mfrac></mrow><mo>,</mo><mfrac><mi>π</mi><mn>3</mn></mfrac></mrow><mo>)</mo></mrow><mo>,</mo></mrow></math></maths><br /> the AOA value range of sector <b>1</b> is
0057<maths id="MATH-US-00003" num="00003"><math overflow="scroll"><mrow><mrow><mo>[</mo><mrow><mfrac><mi>π</mi><mn>3</mn></mfrac><mo>,</mo><mi>π</mi></mrow><mo>)</mo></mrow><mo>,</mo></mrow></math></maths><br /> the AOA value range of sector <b>2</b> is
0058<maths id="MATH-US-00004" num="00004"><math overflow="scroll"><mrow><mrow><mo>[</mo><mrow><mi>π</mi><mo>,</mo><mfrac><mrow><mn>5</mn><mo></mo><mi>π</mi></mrow><mn>3</mn></mfrac></mrow><mo>)</mo></mrow><mo>.</mo></mrow></math></maths>
0059To user in sector <b>0</b>: if the AOA of user j conform to
0060<maths id="MATH-US-00005" num="00005"><math overflow="scroll"><mrow><mrow><msub><mi>AOA</mi><mi>j</mi></msub><mo>∈</mo><mrow><mo>[</mo><mrow><mrow><mo>-</mo><mfrac><mi>π</mi><mn>3</mn></mfrac></mrow><mo>,</mo><mrow><mo>-</mo><mfrac><mi>π</mi><mn>6</mn></mfrac></mrow></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>0</sub>; if the AOA of user j conform to
0061<maths id="MATH-US-00006" num="00006"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mrow><mo>-</mo><mfrac><mi>π</mi><mn>6</mn></mfrac></mrow><mo>,</mo><mn>0</mn></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>1</sub>; if the AOA of user j conform to
0062<maths id="MATH-US-00007" num="00007"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mn>0</mn><mo>,</mo><mfrac><mi>π</mi><mn>6</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>2</sub>; if the AOA of user j conform to
0063<maths id="MATH-US-00008" num="00008"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mi>π</mi><mn>6</mn></mfrac><mo>,</mo><mfrac><mi>π</mi><mn>3</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>3</sub>.
0064To user in sector <b>1</b>: if the AOA of user j conform to
0065<maths id="MATH-US-00009" num="00009"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mi>π</mi><mn>3</mn></mfrac><mo>,</mo><mfrac><mi>π</mi><mn>2</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>0</sub>; if the AOA of user j conform to
0066<maths id="MATH-US-00010" num="00010"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mi>π</mi><mn>2</mn></mfrac><mo>,</mo><mfrac><mrow><mn>2</mn><mo></mo><mi>π</mi></mrow><mn>3</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>1</sub>; if the AOA of user j conform to
0067<maths id="MATH-US-00011" num="00011"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mrow><mn>2</mn><mo></mo><mi>π</mi></mrow><mn>3</mn></mfrac><mo>,</mo><mfrac><mrow><mn>5</mn><mo></mo><mi>π</mi></mrow><mn>6</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>2</sub>; if the AOA of user j conform to
0068<maths id="MATH-US-00012" num="00012"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mrow><mn>5</mn><mo></mo><mi>π</mi></mrow><mn>6</mn></mfrac><mo>,</mo><mi>π</mi></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>3</sub>.
0069To user in sector <b>2</b>: if the AOA of user j conform to
0070<maths id="MATH-US-00013" num="00013"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mi>π</mi><mo>,</mo><mfrac><mrow><mn>7</mn><mo></mo><mi>π</mi></mrow><mn>6</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>0</sub>; if the AOA of user j conform to
0071<maths id="MATH-US-00014" num="00014"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mrow><mn>7</mn><mo></mo><mi>π</mi></mrow><mn>6</mn></mfrac><mo>,</mo><mfrac><mrow><mn>4</mn><mo></mo><mi>π</mi></mrow><mn>3</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>1</sub>; if the AOA of user j conform to
0072<maths id="MATH-US-00015" num="00015"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mrow><mn>4</mn><mo></mo><mi>π</mi></mrow><mn>3</mn></mfrac><mo>,</mo><mfrac><mrow><mn>3</mn><mo></mo><mi>π</mi></mrow><mn>2</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>2</sub>; if the AOA of user j conform to
0073<maths id="MATH-US-00016" num="00016"><math overflow="scroll"><mrow><mrow><mrow><mi>A</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>O</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><msub><mi>A</mi><mi>j</mi></msub></mrow><mo>∈</mo><mrow><mo>[</mo><mrow><mfrac><mrow><mn>3</mn><mo></mo><mi>π</mi></mrow><mn>2</mn></mfrac><mo>,</mo><mfrac><mrow><mn>5</mn><mo></mo><mi>π</mi></mrow><mn>3</mn></mfrac></mrow><mo>)</mo></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then jεU<sub>3</sub>.
0074(2) The system divides time-frequency resource into four resource subsets, time-frequency resource in each resource subset could be continuous, or discontinuous.
0075Resource subset dividing needs to determine the minimum unit for dividing time-frequency resource, in the present embodiment, the system uses subframe configuration <b>0</b> (references 3GPP TS 36.221, V8.0.0) to do resource subset dividing, the size of Resource Block group (RB group) is p=4 under 20 MHz bandwidth, that means the minimum unit for dividing time-frequency resource is four PRBs.
0076Specifically, sets that the total amount of available PRB in system is PRBNum, the PRB with number i (0≦i<PRBNum) is PRB<sub>i</sub>, the size of RB group is p, the amount of resource subsets is N=4, resource subset k is R<sub>k </sub>(0≦k<N), then the resource subset that PRBi belongs to is shown as follow:
0077In the case that
0078<maths id="MATH-US-00017" num="00017"><math overflow="scroll"><mrow><mn>0</mn><mo>≤</mo><mi>i</mi><mo><</mo><mrow><mrow><mrow><mo>⌊</mo><mfrac><mrow><mi>P</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>R</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>B</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>Num</mi></mrow><mrow><mi>N</mi><mo>·</mo><mi>p</mi></mrow></mfrac><mo>⌋</mo></mrow><mo>·</mo><mi>N</mi><mo>·</mo><mi>p</mi></mrow><mo></mo><mstyle><mspace width="0.8em" height="0.8ex" /></mstyle><mo></mo><mi>and</mi><mo></mo><mstyle><mspace width="0.8em" height="0.8ex" /></mstyle><mo></mo><mrow><mrow><mo>⌊</mo><mfrac><mrow><mi>P</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>R</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>B</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>Num</mi></mrow><mrow><mi>N</mi><mo>·</mo><mi>p</mi></mrow></mfrac><mo>⌋</mo></mrow><mo>·</mo><mi>N</mi><mo>·</mo><mi>p</mi></mrow></mrow><mo>≤</mo><mi>i</mi><mo><</mo><mrow><mrow><mo>⌊</mo><mfrac><mrow><mi>P</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>R</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>B</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>Num</mi></mrow><mi>p</mi></mfrac><mo>⌋</mo></mrow><mo>·</mo><mrow><mi>p</mi><mo>:</mo></mrow></mrow></mrow></math></maths>
0079If k·p≦i mod N·p<(k+1)·p, then PRB<sub>i </sub>belongs to resource subset k;
0080If
0081<maths id="MATH-US-00018" num="00018"><math overflow="scroll"><mrow><mrow><mrow><mrow><mo>⌊</mo><mfrac><mrow><mi>P</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>R</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>B</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>Num</mi></mrow><mi>p</mi></mfrac><mo>⌋</mo></mrow><mo>·</mo><mi>p</mi></mrow><mo>≤</mo><mi>i</mi><mo><</mo><mrow><mi>P</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>R</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>B</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>Num</mi></mrow></mrow><mo>,</mo></mrow></math></maths><br /> then PRB<sub>i </sub>belongs to the resource subset which the PRB with number
0082<maths id="MATH-US-00019" num="00019"><math overflow="scroll"><mrow><mrow><mrow><mo>⌊</mo><mfrac><mrow><mi>P</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>R</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>B</mi><mo></mo><mstyle><mspace width="0.3em" height="0.3ex" /></mstyle><mo></mo><mi>Num</mi></mrow><mi>p</mi></mfrac><mo>⌋</mo></mrow><mo>·</mo><mi>p</mi></mrow><mo>-</mo><mn>1</mn></mrow></math></maths><br /> belongs to.
0083To 20 MHz system, if PRBNum=100, p=4, then resource subsets that cell users could use are shown as follow:
0084<maths id="MATH-US-00020" num="00020"><math overflow="scroll"><mrow><mstyle><mspace width="4.4em" height="4.4ex" /></mstyle><mo></mo><mrow><mrow><msub><mi>R</mi><mn>0</mn></msub><mo>=</mo><mrow><mo>{</mo><mtable><mtr><mtd><mrow><mn>0</mn><mo>,</mo><mn>1</mn><mo>,</mo><mn>2</mn><mo>,</mo><mn>3</mn><mo>,</mo><mn>16</mn><mo>,</mo><mn>17</mn><mo>,</mo><mn>18</mn><mo>,</mo><mn>19</mn><mo>,</mo><mn>32</mn><mo>,</mo><mn>33</mn><mo>,</mo><mn>34</mn><mo>,</mo><mn>35</mn><mo>,</mo><mn>48</mn><mo>,</mo><mn>49</mn><mo>,</mo><mn>50</mn><mo>,</mo><mn>51</mn><mo>,</mo></mrow></mtd></mtr><mtr><mtd><mrow><mn>64</mn><mo>,</mo><mn>65</mn><mo>,</mo><mn>66</mn><mo>,</mo><mn>67</mn><mo>,</mo><mn>80</mn><mo>,</mo><mn>81</mn><mo>,</mo><mn>82</mn><mo>,</mo><mn>83</mn><mo>,</mo><mn>96</mn><mo>,</mo><mn>97</mn><mo>,</mo><mn>98</mn><mo>,</mo><mn>99</mn></mrow></mtd></mtr></mtable><mo>}</mo></mrow></mrow><mo>;</mo></mrow></mrow></math></maths><maths id="MATH-US-00020-2" num="00020.2"><math overflow="scroll"><mrow><mstyle><mspace width="4.4em" height="4.4ex" /></mstyle><mo></mo><mrow><mrow><msub><mi>R</mi><mn>1</mn></msub><mo>=</mo><mrow><mo>{</mo><mtable><mtr><mtd><mrow><mn>4</mn><mo>,</mo><mn>5</mn><mo>,</mo><mn>6</mn><mo>,</mo><mn>7</mn><mo>,</mo><mn>20</mn><mo>,</mo><mn>21</mn><mo>,</mo><mn>22</mn><mo>,</mo><mn>23</mn><mo>,</mo><mn>36</mn><mo>,</mo><mn>37</mn><mo>,</mo><mn>38</mn><mo>,</mo><mn>39</mn><mo>,</mo><mn>52</mn><mo>,</mo><mn>53</mn><mo>,</mo><mn>54</mn><mo>,</mo><mn>55</mn><mo>,</mo></mrow></mtd></mtr><mtr><mtd><mrow><mn>68</mn><mo>,</mo><mn>69</mn><mo>,</mo><mn>70</mn><mo>,</mo><mn>71</mn><mo>,</mo><mn>84</mn><mo>,</mo><mn>85</mn><mo>,</mo><mn>86</mn><mo>,</mo><mn>87</mn></mrow></mtd></mtr></mtable><mo>}</mo></mrow></mrow><mo>;</mo></mrow></mrow></math></maths><maths id="MATH-US-00020-3" num="00020.3"><math overflow="scroll"><mrow><mrow><msub><mi>R</mi><mn>2</mn></msub><mo>=</mo><mrow><mo>{</mo><mtable><mtr><mtd><mrow><mn>8</mn><mo>,</mo><mn>9</mn><mo>,</mo><mn>10</mn><mo>,</mo><mn>11</mn><mo>,</mo><mn>24</mn><mo>,</mo><mn>25</mn><mo>,</mo><mn>26</mn><mo>,</mo><mn>27</mn><mo>,</mo><mn>40</mn><mo>,</mo><mn>41</mn><mo>,</mo><mn>42</mn><mo>,</mo><mn>43</mn><mo>,</mo><mn>56</mn><mo>,</mo><mn>57</mn><mo>,</mo><mn>58</mn><mo>,</mo><mn>59</mn><mo>,</mo></mrow></mtd></mtr><mtr><mtd><mrow><mn>72</mn><mo>,</mo><mn>73</mn><mo>,</mo><mn>74</mn><mo>,</mo><mn>75</mn><mo>,</mo><mn>88</mn><mo>,</mo><mn>89</mn><mo>,</mo><mn>90</mn><mo>,</mo><mn>91</mn></mrow></mtd></mtr></mtable><mo>}</mo></mrow></mrow><mo>;</mo></mrow></math></maths><maths id="MATH-US-00020-4" num="00020.4"><math overflow="scroll"><mrow><msub><mi>R</mi><mn>3</mn></msub><mo>=</mo><mrow><mrow><mo>{</mo><mtable><mtr><mtd><mrow><mn>12</mn><mo>,</mo><mn>13</mn><mo>,</mo><mn>14</mn><mo>,</mo><mn>15</mn><mo>,</mo><mn>28</mn><mo>,</mo><mn>29</mn><mo>,</mo><mn>30</mn><mo>,</mo><mn>31</mn><mo>,</mo><mn>44</mn><mo>,</mo><mn>45</mn><mo>,</mo><mn>46</mn><mo>,</mo><mn>47</mn><mo>,</mo><mn>60</mn><mo>,</mo><mn>61</mn><mo>,</mo><mn>62</mn><mo>,</mo><mn>63</mn><mo>,</mo></mrow></mtd></mtr><mtr><mtd><mrow><mn>76</mn><mo>,</mo><mn>77</mn><mo>,</mo><mn>78</mn><mo>,</mo><mn>79</mn><mo>,</mo><mn>92</mn><mo>,</mo><mn>93</mn><mo>,</mo><mn>94</mn><mo>,</mo><mn>95</mn></mrow></mtd></mtr></mtable><mo>}</mo></mrow><mo>.</mo></mrow></mrow></math></maths>
0085(3) The system establishes the mapping relation between user group and resource subset.
0086For users belong to U<sub>k</sub>, the resource subset selection priority order is: R<sub>k</sub>→R<sub>k+1</sub>→ . . . →R<sub>N−1</sub>→R<sub>0</sub>→ . . . R<sub>k−1</sub>.
0087Specifically, in the present embodiment:
0088For users belong to U<sub>0</sub>, the resource subset selection priority order is R<sub>0</sub>→R<sub>1</sub>→R<sub>2</sub>→R<sub>3</sub>;
0089For users belong to U<sub>1</sub>, the resource subset selection priority order is R<sub>1</sub>→R<sub>2</sub>→R<sub>3</sub>→R<sub>0</sub>;
0090For users belong to U<sub>2 </sub>the resource subset selection priority order is R<sub>2</sub>→R<sub>3</sub>→R<sub>0</sub>→R<sub>1</sub>;
0091For users belong to U<sub>3</sub>, the resource subset selection priority order is R<sub>3</sub>→R<sub>0</sub>→R<sub>1</sub>→R<sub>2</sub>.
0092Thus, when cell schedules each subframe, the cell could allocate time-frequency resource for user according to the user group, which the user belongs to, and the above-mentioned mapping relation.
Example 2, Grouping Cell-Edge Users
0093Suppose that it is in three sectors LTE-TDD system, the allocation is to uplink time-frequency resource, and the amount of user groups and resource subsets is N=4.
0094(1) User Grouping
0095It comprises two procedures to group uplink user: divides cell-center users and cell-edge users, and groups cell-edge users.
0096There are many method for dividing cell-center users and cell-edge users: for example, system could divide users according to Reference Signal Receiving Power (RSRP), pilot signal strength, reference signal receiving quality, pilot signal Channel Quality Indicator (CQI); system also could divide users according to detected path loss information or Signal to Interference plus Noise Ratio (SINR) information of users in the cell.
0097Specifically, when system divides cell-center users and cell-edge users according to RSRP, it could achieve the division basing on RSRP difference value between neighboring cell and home cell:
00981. The eNB configures measure and instructs User Equipment (UE) to measure RSRP of neighboring cell and home cell, if the result of neighboring cell RSRP subtracting home cell RSRP is more than the threshold TH<b>1</b> (TH<b>1</b> could be in a range (−2 dB to −5 dB)), and trigger condition is met, then UE sends the measure report to the eNB, the eNB determines that UE is on cell edge after receiving the measure report; if the result of neighboring cell RSRP subtracting home cell RSRP is less than the threshold TH<b>2</b> (TH<b>1</b>>TH<b>2</b>), and trigger condition is met, then UE sends the measure report to the eNB, the eNB determines that UE is on cell center after receiving the measure report.
00992. The UE measure report comprises three RSRP difference value between neighboring cell and home cell, there is a time interval between each two adjacent measures of the RSRP difference values, the eNB could get location information of UE according to the measure report. For example, if three continuous RSRP difference value respectively are −7, −3, 1, then the eNB could determine that the UE is moving from cell center to cell edge.
0100It could use method for grouping users in Example 1, to group uplink cell-edge users basing on AOA.
0101(2) Resource Subset Dividing
0102To 20 MHz system, time-frequency resource for cell-edge users is divided into four resource subsets, time-frequency resource in each resource subset is continuous.
0103Suppose there are 100 available time-frequency resources, then each resource subset comprises 25 available time-frequency resources. Specifically, it is shown in <figref idref="DRAWINGS">FIG. 4</figref>:
0104Resource subset <b>0</b> could comprise time-frequency resources with number <b>0</b>˜<b>24</b>, the time-frequency resource with lesser number has the higher using priority;
0105Resource subset <b>1</b> could comprise time-frequency resources with number <b>25</b>˜<b>49</b>, the time-frequency resource with lesser number has the higher using priority;
0106Resource subset <b>2</b> could comprise time-frequency resources with number <b>50</b>˜<b>74</b>, the time-frequency resource with bigger number has the higher using priority;
0107Resource subset <b>3</b> could comprise time-frequency resources with number <b>75</b>˜<b>99</b>, the time-frequency resource with bigger number has the higher using priority.
0108(3) Establishing mapping relation between user group and resource subset:
0109For users belong to U<sub>k</sub>, the cell-edge user resource subset selection priority order is: R<sub>k</sub>→R<sub>k+1</sub>→ . . . →R<sub>N−1</sub>→R<sub>0</sub>→ . . . R<sub>k−1</sub>; cell-center user selection priority order is: R<sub>k+1+└N/2┘</sub>→ . . . →R<sub>N−1</sub>→R<sub>0</sub>→ . . . →R<sub>k−1</sub>→R<sub>k+└N/2┘</sub>→ . . . R<sub>k</sub>.
0110Specifically, in the present embodiment:
0111The cell-edge user resource subset selection priority order of the users belongs to U<sub>0 </sub>is: R<sub>0</sub>→R<sub>1</sub>→R<sub>2</sub>→R<sub>3</sub>, cell-center user resource subset selection priority order is: R<sub>2</sub>→R<sub>3</sub>→R<sub>1</sub>→R<sub>0</sub>;
0112The cell-edge user resource subset selection priority order of the users belongs to U<sub>1 </sub>is: R<sub>1</sub>→R<sub>2</sub>→R<sub>3</sub>→R<sub>0</sub>, cell-center user resource subset selection priority order is: R<sub>2</sub>→R<sub>3</sub>→R<sub>0</sub>→R<sub>1</sub>;
0113The cell-edge user resource subset selection priority order of the users belongs to U<sub>2 </sub>is: R<sub>2</sub>→R<sub>3</sub>→R<sub>0</sub>→R<sub>1</sub>, cell-center user resource subset selection priority order is: R<sub>0</sub>→R<sub>1</sub>→R<sub>3</sub>→R<sub>2</sub>;
0114The cell-edge user resource subset selection priority order of the users belongs to U<sub>3 </sub>is: R<sub>3</sub>→R<sub>0</sub>→R<sub>1</sub>→R<sub>2</sub>, cell-center user resource subset selection priority order is: R<sub>1</sub>→R<sub>2</sub>→R<sub>0</sub>→R<sub>3</sub>.
0115The method for interference coordination of the embodiments of the present invention is not only available in LTE-TDD system, it is available in any system that could schedule resource respectively on time domain and frequency domain, and exists directivity interference. The method could ensure to allocate mutually orthogonal time-frequency resources to cell-edge users in neighboring cell and home cell with same direction information, thus could reduce the probability that cell-edge users in neighboring cell and home cell use same time-frequency resource, reduce inter-cell co-frequency interference, and improve channel quality.
0116Furthermore, combining with scheduling strategy, the method could achieve space diversity gain, improve system capacity. Specifically, the system could pair users in different user groups with higher space isolation, and schedule same time-frequency resource to the paired users. Each paired user could be distinguished by direction information.
0117In the method for interference coordination of the embodiments of the present invention, in order to flexibly adapt the diversification of business, load, resource requirement of cell-edge users in different cell, and not increase complexity and load of X2 interface, the system could adjust user group information and/or resource subset information in semi-static mode. In the system basing on multi-antenna forming technology, besides common load information, such as High Interference Indicator (HII), Overload Indicator (OI), Relative Narrowband Tx Power (RNTP), etc, cells also could communicate angle information of user and resource subset information etc. After the neighboring cell has received the information from home cell, the neighboring cell will do corresponding adjustment, and sends the adjustment result to the home cell through X2 interface.
0118In the embodiments of the present invention, the system could dynamically adjust user group information and/or resource subset information according to AOA distribution of cell-edge users, business load distribution of cell-edge user group, etc. For example, after a long period statistics, if it is found that amount of users belong to U<sub>0 </sub>is larger, but the amount of users belong to U<sub>1 </sub>is less, then the system could adjust the division configuration of resource subsets. The adjusting result is that the resource subset divided for U<sub>0 </sub>is adjusted to time-frequency resources with number <b>0</b>˜<b>29</b>, and the resource subset divided for U<sub>1 </sub>is adjusted to time-frequency resources with number <b>30</b>˜<b>49</b>. Then, home cell sends the adjusting result to neighboring cell through X2 interface, the neighboring cell does adjustment, that is useful to home cell and neighboring cell, according to this result, if the neighboring cell exists same condition, then the neighboring cell could do same adjustment. Otherwise, the neighboring cell does not need to change, the home cell adjusts the using priority of the time-frequency resources in R<b>1</b>, using priority of the resource with lesser number is adjusted from high to low, the home cell sends the adjustment result to neighboring cell through X2 interface, after several adjustments, it would achieve equilibrium that cost function of each adjacent sectors has minimum value.
0119General technical personnel in this field could understand that all or part of the steps of method in above-mentioned embodiments could be achieved by using program to instruct hardware, said program could be stored in storage medium that computer could read, such as ROM/RAM, disk, CD-ROM, etc.
0120An access network device is provided in the embodiment of the present invention, <figref idref="DRAWINGS">FIG. 5</figref> is a structure diagram of the access network device, the access network device comprises: Resource getting module <b>501</b>, Resource grouping module <b>502</b>, User grouping module <b>503</b>, Resource allocating module <b>504</b>. Therein: resource getting module <b>501</b>, is used for getting time-frequency resource of cell; resource grouping module <b>502</b>, is used for dividing said time-frequency resource into multiple resource subset; user grouping module <b>503</b>, is used for grouping users to be scheduled in the cell into multiple user groups according to AOA, the amount of said user groups is equal to the amount of said resource subset (generally 3 or 4), different user groups have different resource subset selection priority orders; resource allocating module <b>504</b>, is used for allocating time-frequency resource in resource subset to users, which are in neighboring cells and have the same direction, according to said resource subset selection priority orders of the user groups.
0121Specifically, when resource grouping module <b>502</b> divides time-frequency resource, to downlink time-frequency resource, could divide time-frequency resource by using one or more continuous PRB as a minimum unit; to uplink time-frequency resource, could do resource subset division to continuous time-frequency resource according to principle of mutually orthogonal. Certainly, resource dividing mode of the embodiments of the present invention is not limited to this.
0122User grouping module <b>503</b> needs to divide users in the cell according to the location of the users, in specific implementation, user grouping module <b>503</b> could is comprise: space dividing submodule <b>531</b> and user group determining submodule <b>532</b>. Therein, space dividing submodule <b>531</b>, is used for dividing angle space into multiple mutually orthogonal angle subspace according to AOA, each angle subspace is corresponding to a user group; user group determining submodule <b>532</b>, is used for determining user group, which the user belongs to, according to angle subspace which said user belongs to.
0123Resource allocating module <b>504</b> needs to allocate time-frequency resource in resource subset to users with the same direction and in neighboring cells, according to said resource subset selection priority order corresponding to user group. In specific implementation, resource allocating module <b>504</b> could comprise establishing submodule <b>541</b> and allocating submodule <b>542</b>. Therein:
0124Establishing submodule <b>541</b>, is used for establishing mapping relation between user group and resource subset selection priority order, when establishing mapping relation between user group and resource subset selection priority order, it could be according to the following principle: selecting resource subset with top priority in resource subset selection priority order for one of user groups, resource subset with top priority in resource subset selection priority order corresponding to different user group is different.
0125Allocating submodule <b>542</b>, is used for allocating time-frequency resource for each user according to user group of the user and said mapping relation, when scheduling on each subframe.
0126Certainly, the structure of said resource allocating module <b>504</b> is not limited to the above mentioned form, it also could be other forms.
0127In order to flexibly adapt the diversification of business, load, resource requirement of cell-edge users in different cell, the access network device of the embodiment of the present invention could further comprise: communication module and updating module (not shown in the figures). Therein, said communication module, is used for sending change information to the neighboring cell, when any of user group, resource subset, and mapping relation between user group and resource subset selection priority order is change; said updating module, is used for adjusting home cell user group, and/or home cell resource subset, and/or home cell mapping relation between user group and resource subset selection priority order, according to said change information, after receiving the change information of neighboring cell.
0128Neighboring cell interference is stronger to cell-edge users, but neighboring cell interference is not strong to cell-center user, therefore, in specific applications, the system could only grouping the cell-edge users, correspondingly, the system could only divide part of time-frequency resource of system. That also could ensure that users in neighboring cells and with the same direction preferentially use different time-frequency resources.
0129For this reason, the access network device of the embodiment of the present invention could further comprise: cell-edge user dividing module <b>505</b>, is used for dividing cell-center users and cell-edge users, according to Reference Signal Receiving Power, or pilot signal strength, or reference signal receiving quality, or pilot signal CQI, or detected path loss information, or SINR information of each user in said cell.
0130In this case, said user grouping module <b>503</b> only groups cell-edge users divided by cell-edge user dividing module <b>505</b>. Correspondingly, resource getting module <b>501</b> could only get part of time-frequency resource of the cell; or resource getting module <b>501</b> gets all time-frequency resource of the cell, resource grouping module <b>502</b> selects part of time-frequency resource to do grouping. In practice, that could be flexibly set.
0131The access network device of the embodiment of the present invention could allocate mutually orthogonal time-frequency resources to cell-edge users in neighboring cell and home cell with same direction information, thus could reduce the probability that cell-edge users in neighboring cell and home cell use same time-frequency resource, reduce inter-cell co-frequency interference, and improve channel quality.
0132The embodiment of the present invention is detailed above. In the article, the present invention is elaborated by specific implementation methods. Illustration of the embodiments is only used to help to understand method and device of the present invention. Meanwhile, to general technical personnel in this field, basing on the idea of the invention, the specific implementation method and application scope could be diversification. Therefore, content of the present description would not be understood as limitation of the present invention.
Contents6
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| Office Action from corresponding EP App. No. 09836068.8 dated Feb. 13, 2017. | Non-patent | – | Applicant |
| European Search Report for corresponding EP App. No. 09836068.8 dated Jun. 23, 2016. | Non-patent | – | Applicant |
| Extended European Search Report for European Patent Application No. 09836068.8 dated Jun. 6, 2016. | Non-patent | – | Applicant |
| International Search Report and IPRP for corresponding PCT/CN2009/076224 dated Apr. 15, 2010 and Jul. 5, 2011. | Non-patent | – | Applicant |
| Office Action from corresponding EP App. No. 09836068.8 dated Feb. 13, 2017. | Non-patent | – | Applicant |
| European Search Report for corresponding EP App. No. 09836068.8 dated Jun. 23, 2016. | Non-patent | – | Applicant |
| Extended European Search Report for European Patent Application No. 09836068.8 dated Jun. 6, 2016. | Non-patent | – | Applicant |
10 members in 5 offices
Priority claims9
| Document | Office | Kind | Date |
|---|---|---|---|
| 200810247578 | China | – | |
| 200810247578 | China | A | |
| 200810247578 | China | A | |
| 2009076224 | China | W | |
| 2009076224 | China | W | |
| 200810247578 | – | – | – |
| CN20081247578 | – | – | – |
| PCTCN2009076224 | – | – | – |
| WO2009CN76224 | – | – | – |
Members10
| Document | Office | Kind | |
|---|---|---|---|
| CN101772176A | China | A | |
| WO2010075781A1 | World Intellectual Property Organization (WIPO) | A1 | |
| KR20110091036A | Republic of Korea | A | |
| EP2373109A1 | European Patent Office (EPO) | A1 | |
| US2011280205A1 | United States of America | A1 | |
| CN101772176B | China | B | |
| KR101229322B1 | Republic of Korea | B1 | |
| EP2373109A4 | European Patent Office (EPO) | A4 | |
| US9894672B2This record | United States of America | B2 | |
| EP2373109B1 | European Patent Office (EPO) | B1 |
62 transactions on the USPTO file
Allowed after 1 non-final rejection, 1 final rejection, 1 RCE and 1 appeal.
- Non-final rejections
- 1
- Final rejections
- 1
- RCEs
- 1
- Appeals
- 1
Over time
Point at a mark for the transactionTransactions
| Event | Code | |
|---|---|---|
| Expire PatentEXP. | EXP. | |
| Maintenance Fee Reminder MailedREM. | REM. | |
| Payment of Maintenance Fee, 4th Year, Large EntityM1551 | M1551 | |
| Recordation of Patent Grant MailedPGM/ | PGM/ | |
| Patent Issue Date Used in PTA CalculationAllowedPTAC | PTAC | |
| Issue Notification MailedAllowedWPIR | WPIR | |
| Dispatch to FDCD1935 | D1935 | |
| Application Is Considered Ready for IssuePILS | PILS | |
| Issue Fee Payment VerifiedN084 | N084 | |
| Issue Fee Payment VerifiedN084 | N084 | |
| Issue Fee Payment ReceivedIFEE | IFEE | |
| Mail Notice of AllowanceAllowedMN/=. | MN/=. | |
| Notice of Allowance Data Verification CompletedAllowedN/=. | N/=. | |
| Interview Summary - Examiner Initiated - TelephonicEXET | EXET | |
| Reasons for AllowanceEX.R | EX.R | |
| Examiner's Amendment CommunicationEX.A | EX.A | |
| Mail Notice of Rescinded AbandonmentAbandonedMNRAB | MNRAB | |
| Information Disclosure Statement consideredIDSC | IDSC | |
| Information Disclosure Statement consideredIDSC | IDSC | |
| Information Disclosure Statement consideredIDSC | IDSC | |
| Date Forwarded to ExaminerFWDX | FWDX | |
| Disposal for a RCE / CPA / R129AbandonedABN9 | ABN9 | |
| Information Disclosure Statement (IDS) FiledM844 | M844 | |
| Information Disclosure Statement (IDS) FiledWIDS | WIDS | |
| Notice of Rescinded Abandonment in TCsAbandonedNRAB | NRAB | |
| Request for RefundIRFND | IRFND | |
| Information Disclosure Statement (IDS) FiledWIDS | WIDS | |
| Mail-Petition to Revive Application - GrantedMPREV | MPREV | |
| Petition to Revive Application - GrantedPREV | PREV | |
| Information Disclosure Statement (IDS) FiledM844 | M844 | |
| Information Disclosure Statement (IDS) FiledWIDS | WIDS | |
| Request for Continued Examination (RCE)RCEX | RCEX | |
| Petition EnteredPET. | PET. | |
| Workflow - Request for RCE - BeginBRCE | BRCE | |
| Mail Abandonment for Failure to Respond to Office ActionAbandonedMABN2 | MABN2 | |
| Aband. for Failure to Respond to O. A.AbandonedABN2 | ABN2 | |
| Notice of Appeal FiledN/AP | N/AP | |
| Request for Extension of Time - GrantedXT/G | XT/G | |
| Mail Final Rejection (PTOL - 326)Final rejectionMCTFR | MCTFR | |
| Final RejectionFinal rejectionCTFR | CTFR | |
| Date Forwarded to ExaminerFWDX | FWDX | |
| Response after Non-Final ActionA... | A... | |
| Mail Non-Final RejectionNon-final rejectionMCTNF | MCTNF | |
| Non-Final RejectionNon-final rejectionCTNF | CTNF | |
| Case Docketed to Examiner in GAUDOCK | DOCK | |
| Case Docketed to Examiner in GAUDOCK | DOCK | |
| Information Disclosure Statement consideredIDSC | IDSC | |
| Reference capture on IDSRCAP | RCAP | |
| Information Disclosure Statement (IDS) FiledM844 | M844 | |
| Information Disclosure Statement (IDS) FiledWIDS | WIDS | |
| PG-Pub Issue NotificationPG-ISSUE | PG-ISSUE | |
| Case Docketed to Examiner in GAUDOCK | DOCK | |
| Application Dispatched from OIPEOIPE | OIPE | |
| Sent to Classification ContractorPGPC | PGPC | |
| Filing ReceiptFLRCPT.O | FLRCPT.O | |
| Notice of DO/EO Acceptance MailedM903 | M903 | |
| Request for Foreign Priority (Priority Papers May Be Included)RQPR | RQPR | |
| Request for Foreign Priority (Priority Papers May Be Included)RQPR | RQPR | |
| Preliminary AmendmentA.PE | A.PE | |
| 371 Completion Date371COMP | 371COMP | |
| Cleared by OIPE CSRL194 | L194 | |
| Initial Exam Team nnIEXX | IEXX |
10 legal events, as the office reported them to INPADOC
Over the term
Point at a mark for the eventEvents
| Event | Code | |
|---|---|---|
| Lapsed due to failure to pay maintenance feeLapsedFP | FP | |
| Lapse for failure to pay maintenance feesLapsedPATENT EXPIRED FOR FAILURE TO PAY MAINTENANCE FEES (ORIGINAL EVENT CODE: EXP.); ENTITY STATUS OF PATENT OWNER: LARGE ENTITYLAPS | LAPS | |
| Information on status: patent discontinuationPATENT EXPIRED DUE TO NONPAYMENT OF MAINTENANCE FEES UNDER 37 CFR 1.362STCH | STCH | |
| Fee payment procedureMAINTENANCE FEE REMINDER MAILED (ORIGINAL EVENT CODE: REM.); ENTITY STATUS OF PATENT OWNER: LARGE ENTITYFEPP | FEPP | |
| Maintenance fee paymentMAFP | MAFP | |
| AssignmentAS | AS | |
| Information on status: patent grantGrantedPATENTED CASESTCF | STCF | |
| AssignmentAS | AS | |
| AssignmentAS | AS | |
| AssignmentAS | AS |
Numbers
- Publication
- 09894672
- Publication, DOCDB
- 9894672
- Publication, EPODOC
- US9894672
- Application
- 13142828
- Application, DOCDB
- 200913142828
- Application, EPODOC
- US200913142828
Titles
- English
- Method and access network device for interference coordination
Patent term adjustment
- A delay
- +758 daysthe office missed an examination deadline
- B delay
- +660 dayspendency past three years
- Applicant delay
- −1,297 days
- Net adjustment
- 121 days
Classification
- CPC, 12
- H04W72/121
- H04W4/08
- H04W72/0446
- H04W28/0236
- H04W72/082
- H04W72/0453
- H04W52/244
- H04W72/56
- H04W16/12
- H04W72/10
- H04W72/541
- H04W72/563
- IPC, 9
- H04W4 00
- H04W72 12
- H04W28 02
- H04W72 08
- H04W52 24
- H04W4 08
- H04W72 04
- H04W72 10
- H04W72 54
- USPC, 2
- 455562100
- 001001000